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Metabolomic technologies and their application to the study of plants and plant-host interactions

机译:代谢组学技术及其在植物和植物-宿主相互作用研究中的应用

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Metabolomics is perhaps the ultimate level of post-genomic analysis as it can reveal changes in metabolite fluxes that are controlled by only minor changes within gene expression measured using transcriptomics and/or by analysing the proteome that elucidates post-translational control over enzyme activity. Metabolic change is a major feature of plant genetic modification and plant interactions with pathogens, pests, and their environment. In the assessment of genetically modified plant tissues, metabolomics has been used extensively to explore by-products resulting from transgene expression and scenarios of substantial equivalence. Many studies have concentrated on the physiological development of plant tissues as well as on the stress responses involved in heat shock or treatment with stress-eliciting molecules such as methyl jasmonic acid, yeast elicitor or bacterial lipopolysaccharide. Plant-host interactions represent one of the most biochemically complex and challenging scenarios that are currently being assessed by metabolomic approaches. For example, the mixtures of pathogen-colonised and non-challenged plant cells represent an extremely heterogeneous and biochemically rich sample; there is also the further complication of identifying which metabolites are derived from the plant host and which are from the interacting pathogen. This review will present an overview of the analytical instrumentation currently applied to plant metabolomic analysis, literature within the field will be reviewed paying particular regard to studies based on plant-host interactions and finally the future prospects on the metabolomic analysis of plants and plant-host interactions will be discussed.
机译:代谢组学也许是基因组分析的最终水平,因为它可以揭示代谢物通量的变化,该变化仅受转录组学和/或通过分析阐明酶活后翻译后控制的蛋白质组的基因表达内的微小变化所控制。代谢变化是植物基因改造以及植物与病原体,害虫及其环境相互作用的主要特征。在评估转基因植物组织时,代谢组学已被广泛用于研究转基因表达和基本等同的情况产生的副产物。许多研究集中在植物组织的生理发育以及热休克或用胁迫诱导分子如甲基茉莉酸,酵母诱导剂或细菌脂多糖处理中所涉及的胁迫反应上。植物与宿主的相互作用代表了目前正在通过代谢组学方法评估的最生化复杂和最具挑战性的情况之一。例如,病原菌定殖的植物细胞和非挑战性植物细胞的混合物代表了非常异质且生物化学丰富的样品。鉴定哪些代谢产物来自植物宿主以及哪些代谢相互作用病原体还存在进一步的复杂性。这篇综述将概述当前用于植物代谢组学分析的分析仪器,将回顾该领域的文献,尤其要注意基于植物-宿主相互作用的研究,最后是植物和植物-宿主的代谢组学分析的未来前景互动将进行讨论。

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